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Dive into the research topics where Dong-Kyun Shin is active.

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Featured researches published by Dong-Kyun Shin.


Semiconductor Science and Technology | 2014

Thermal property of transparent silver nanowire films

Jongwoon Park; Dong-Kyun Shin; Jihye Ahn; Jung-Yong Lee

Through a comparison with transparent polymer composite films, we investigate the thermal property of transparent silver nanowire (AgNW) films that may be employed for heat sink in transparent electronic devices. To fabricate transparent polymer composite films and enhance their thermal property, poly(methyl methacrylate) (PMMA) solution featuring high transparency (?90%) and thermal emissivity (0.9) is mixed with thermal conductive fillers such as aluminum nitride (AlN) and silicon carbide (SiC). It is observed that the thermal emissivity of the AgNW films is decreased as the sheet resistance is reduced. However, we have found that the AgNW film shows the most excellent heat dissipation property (53.7??C) while maintaining relatively higher transparency (77.1% at 520?nm), followed by the PMMA:SiC and then PMMA:AlN films.


IEEE\/OSA Journal of Display Technology | 2015

Angular Dependence of Moiré Fringes Induced by Metal Grids for Touch Screen Panels

Dong-Kyun Shin; Jongwoon Park

By way of experiments and ray tracing simulations, we investigate the angular dependence of moiré fringes induced by metal grids of various shapes (e.g., rectangular, square, hexagonal, and random metal grids) for touch screen panels (TSPs). To quantify the moiré phenomenon, we have utilized the standard deviation (SD) calculated from the simulated ray distribution. The SD value is significantly decreased (i.e., the moiré phenomenon is substantially suppressed) with the rectangular and square metal grids when the crossing angle between the metal grid and a black matrix (BM) of display panels lies within the range between 20 ° and 60 °. For the hexagonal metal grid, there appears a sharp dip corresponding to the minimum SD value every 30 ° rotation angle. However, the SD value is observed to be very high near the crossing angles at which a sharp dip occurs. Though no angular dependence arises and no moiré patterns appear with the random metal grid, yet the SD value is even higher due to point defects, compared with the rectangular and square metal grids. These results are in qualitatively good agreement with the experiment results observed with the naked eye.


IEEE\/OSA Journal of Display Technology | 2016

Suppression of Moiré Phenomenon Induced by Metal Grids for Touch Screen Panels

Dong-Kyun Shin; Jongwoon Park

With attempt to suppress the Moiré phenomenon, we conduct ray tracing simulations with various metal grids having different degree of randomness (e.g., rectangular, width-altered rectangular, line-shifted rectangular, wavy square, and random metal grids) in the presence of twisted nematic (TN) or in-plane switching (IPS) mode black matrix (BM). We analyze their angular dependence in terms of the standard deviation (SD) calculated from the simulated ray distribution. It is observed that metal grids with a lower degree of randomness exhibit a stronger angular dependence, yet lower SD value over the broader range of crossing angles. Though metal grids with a higher degree of randomness show a weaker angular dependence, yet they bring in higher fluctuation in the SD value due most likely to point defects. The wavy square metal grid results in periodic point defects, whereas the random metal grid gives rise to aperiodic point defects. Through a comparison between simulation and experiment results, we have found that moiré patterns are hardly seen to the naked eye when the SD value is less than 10, which provides useful design guidelines of metal grids.


Displays | 2018

Simulation and analysis on visibility enhancement for laser beam projected on display panels using black matrix with scattering particles

Dong-Kyun Shin; Jin-Young Lee; Gieun Kim; Jongwoon Park

Abstract With an attempt to enhance the visibility of laser beam projected on a display panel, we investigate the single-layered black matrix (BM) structure where light scattering particles are embedded in BM and the double-layered BM structure in which the scattering layer is separated from BM. By a ray tracing tool, we perform simulations, and then calculate the scattered ray distribution and detected power for those BM structures. It is observed from the results for both structures that the visibility is enhanced with increasing scattering particle density, but lowered with increasing oblique incidence of the laser beam. It is also demonstrated that the double-layered BM structure shows higher visibility than the single-layered BM structure. However, there exists a trade-off between the visibility of the projected laser beam on display panels and color mixing among pixels on the selection of those BM structures. Although color mixing is still unavoidable, our study shows that the scattered power into the active pixel area (pixel aperture) is as low as 1% of the incident laser power.


Displays | 2014

Investigation of starburst phenomenon using ray tracing for touch screen panels

Dong-Kyun Shin; Jongwoon Park

Abstract We investigate the effect of the metal pattern shape (i.e., square, hexagonal, and random grids) on the starburst phenomenon of touch screen panels (TSPs) based on opaque metallic grids. It is demonstrated that a standalone random metal grid can suppress the starburst phenomenon to a great extent. By way of ray tracing simulation, we have found that specular reflection of light on the gentle slope of the patterned edges of metallic grids contributes to the generation of starburst patterns. It is also addressed that employing a light-absorbing material and increasing metal grid spacing can reduce the intensity of starburst patterns.


Journal of Physics and Chemistry of Solids | 2016

Investigation on slot-die coating of hybrid material structure for OLED lightings

Kwang-Jun Choi; Jin-Young Lee; Dong-Kyun Shin; Jongwoon Park


Thin Solid Films | 2016

Fabrication of silver nanowire-based stretchable electrodes using spray coating

Jin-Young Lee; Dong-Kyun Shin; Jongwoon Park


Displays | 2015

Design of moiré-free metal meshes using ray tracing for touch screen panels

Dong-Kyun Shin; Jongwoon Park


Thin Solid Films | 2016

Slot-die coating of organic thin films for active-matrix organic light-emitting diode displays

Dong-Kyun Shin; Jin-Young Lee; Ki-Young Hong; Jongwoon Park; Yu-Seok Seo


IEEE Transactions on Electron Devices | 2018

Improved Surface Morphology of Crosslinked Hole Transport Films by a Mixture of Polymer for OLEDs

Jin-Young Lee; Gieun Kim; Dong-Kyun Shin; Yu-Seok Seo; Kiwon Kim; Jongwoon Park

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Jongwoon Park

Korea University of Technology and Education

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Jin-Young Lee

Korea University of Technology and Education

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Gieun Kim

Korea University of Technology and Education

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Ki-Young Hong

Korea University of Technology and Education

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Kwang-Jun Choi

Korea University of Technology and Education

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